Geophysical Research Letters · 2013 · 197 citations · 22 references
EngineeringExtreme WeatherClimate ModelingEarth ScienceRegional Climate ResponseAtmospheric ScienceClimate ChangeClimate VariabilityHydrometeorologyMeteorologyWestern North PacificStrong Wnpsh CasesGeographyOceanic ForcingLate SummerEarth's ClimateClimate DynamicsClimatologySummer MonsoonSubtropical HighMeteorological Forcing
Abstract The western North Pacific (WNP) Subtropical High (WNPSH) is a controlling system for East Asian Summer monsoon and tropical storm activities, whereas what maintains the anomalous summertime WNPSH has been a long‐standing riddle. Here we demonstrate that the local convection‐wind‐evaporation‐SST (CWES) feedback relying on both mean flows and mean precipitation is key in maintaining the WNPSH, while the remote forcing from the development of the El Niño/Southern Oscillation is secondary. Strikingly, the majority of strong WNPSH cases exhibit anomalous intensification in late summer (August), which is dominantly determined by the seasonal march of the mean state. That is, enhanced mean precipitation associated with strong WNP monsoon trough in late summer makes atmospheric response much more sensitive to local SST forcing than early summer.
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